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Remote Access Revolution: Chemical Crystallographers Enter a New Era at Diamond Light Source Beamline I19

机译:远程访问革命:化学晶体学家进入钻石光源Beamline I19的新时代

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Since the inception of the use of synchrotron radiation in the structural characterisation of crystalline materials by single-crystal diffraction in the late 20th century, the field has undergone an explosion of technological developments. These cover all aspects of the experiments performed, from the construction of the storage rings and insertion devices, to the end user functionalities in the experimental hutches. Developments in automation have most frequently been driven by the macromolecular crystallography community. The drive towards greater access to ever-brighter X-ray sources has benefited the entire field. Herein, we detail the revolution that is now occurring within the chemical crystallography community, utilising many of the tools developed by their more biologically oriented colleagues, along with specialised functionalities that are tailored to the small-molecule world. We discuss the benefits of utilising the advanced features of Diamond Light Source beamline I19 in the newly developed remote access mode and the step-change in productivity that can be established as a result.
机译:自从20世纪后期开始在单晶衍射晶体材料的结构表征中使用同步辐射以来,该领域就发生了爆炸性的技术发展。这些内容涵盖了实验的方方面面,从存储环和插入设备的结构到实验储藏室的最终用户功能。自动化的发展最常见的是大分子晶体学领域。越来越多地访问更明亮的X射线源的努力使整个领域受益。在此,我们将详细介绍化学晶体学领域内正在发生的革命,这些革命是利用他们的更加以生物学为导向的同事开发的许多工具,以及为小分子世界量身定制的特殊功能。我们讨论了在新开发的远程访问模式下利用钻石光源光束线I19的高级功能的好处以及由此可以确定的生产率的逐步变化。

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